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| Ma W, Zhang W, Zhao Y, et al. Preparation and assessment of a self©\healing material based on microcapsules filled with ethyl phenylacetate[J]. Journal of Applied Polymer Science, 2016. |
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SCI¼ìË÷£º Preparation and assessment of a self-healing material based on microcapsules filled with ethyl phenylacetate ×÷Õß:Ma, WP (Ma, Wanpeng)[ 1 ] ; Zhang, W (Zhang, Wei)[ 1 ] ; Zhao, Y (Zhao, Yang)[ 1 ] ; Yu, HL (Yu, Helong)[ 1 ] JOURNAL OF APPLIED POLYMER SCIENCE ¾í: 133 ÆÚ: 20 ÎÄÏ׺Å: 43430 DOI: 10.1002/APP.43430 ³ö°æÄê: MAY 20 2016 ²é¿´ÆÚ¿¯ÐÅÏ¢ JOURNAL OF APPLIED POLYMER SCIENCE ³ö°æÉÌ WILEY-BLACKWELL, 111 RIVER ST, HOBOKEN 07030-5774, NJ USA ISSN: 0021-8995 eISSN: 1097-4628 Ñо¿ÁìÓò Polymer Science ÕªÒª A self-healing material was developed on the basis of a biological system. The self-healing epoxy resin, which incorporated microcapsules filled with ethyl phenylacetate (EPA), was investigated. The microcapsules were prepared by an in situ polymerization method. The microcapsule-formation process was monitored by optical microscopy, and the surface morphology was observed by scanning electron microscopy (SEM). The self-healing performance of the epoxy resin was assessed by manual and in situ healing experiments. We investigated the effects of the healing time, amount of EPA, and degree of curing of matrix on the healing performance by manually injecting EPA into the crack plane. The maximum healing efficiency was obtained within 24 h. The swelling curve was overlaid onto the healed load plot; this indicated that crack healing was achieved as a result of solvent diffusion. The healing load reached the maximum value when the amount of EPA was 0.5 mu L and was capable of filling the crack volume. Moreover, the healing performance was related to the degree of swelling. The in situ healing efficiency was dependent on the microcapsule concentration. The fracture toughness could be fully restored when the microcapsule concentration was 10%. Finally, the crack interface was analyzed with SEM. The results show that the fracture line was difficult to detect, and this suggested complete crack healing by EPA. (C) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43430. ¹Ø¼ü´Ê ×÷Õ߹ؼü´Ê:biomaterials; biomimetic; stimuli-sensitive polymers; swelling; thermosets KeyWords Plus OLYMERIC MATERIALS; FATIGUE RESPONSE; EPOXY; COMPOSITES; KINETICS; DICYCLOPENTADIENE; HEALANT; RESTORATION; MORPHOLOGY; STRENGTH ×÷ÕßÐÅÏ¢ ͨѶ×÷ÕßµØÖ·: Zhang, W (ͨѶ×÷Õß) Acad Armored Forces Engn, Sci & Technol Remanufacturing Lab, Beijing 100072, Peoples R China. ÔöÇ¿×éÖ¯ÐÅÏ¢µÄÃû³Æ Academy of Armored Forces Engineering - China µØÖ·: [ 1 ] Acad Armored Forces Engn, Sci & Technol Remanufacturing Lab, Beijing 100072, Peoples R China ÔöÇ¿×éÖ¯ÐÅÏ¢µÄÃû³Æ Academy of Armored Forces Engineering - China µç×ÓÓʼþµØÖ·:zhangwei18@hotmail.com »ù½ð×ÊÖúÖÂл »ù½ð×ÊÖú»ú¹¹ ÊÚȨºÅ Natural Science Foundation of China 50775222 ²é¿´»ù½ð×ÊÖúÐÅÏ¢¹Ø±Õ»ù½ð×ÊÖúÐÅÏ¢ The work was supported by the Natural Science Foundation of China (contract grant number 50775222). The authors thank Xiaodi Liu for helpful technical support. ³ö°æÉÌ WILEY-BLACKWELL, 111 RIVER ST, HOBOKEN 07030-5774, NJ USA Àà±ð / ·ÖÀà Ñо¿·½Ïò olymer ScienceWeb of Science Àà±ð olymer ScienceÎÄÏ×ÐÅÏ¢ ÎÄÏ×ÀàÐÍ:Article ÓïÖÖ:English Èë²ØºÅ: WOS:000371253300018 ISSN: 0021-8995 eISSN: 1097-4628 ÆÚ¿¯ÐÅÏ¢ Ŀ¼£º Current Contents Connect® ÆäËûÐÅÏ¢ IDS ºÅ: DF3OE Web of Science ºËÐĺϼ¯ÖÐµÄ "ÒýÓõIJο¼ÎÄÏ×": 40 Web of Science ºËÐĺϼ¯ÖÐµÄ "±»ÒýƵ´Î": 0 Ó°ÏìÒò×Ó 1.768 1.662 2014 5 Äê JCR® Àà±ð Àà±ðÖеÄÅÅÐò JCR ·ÖÇø POLYMER SCIENCE 35/82 Q2 Êý¾ÝÀ´×ÔµÚ 2014 °æ Journal Citation Reports® |
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OLYMERIC MATERIALS; FATIGUE RESPONSE; EPOXY; COMPOSITES; KINETICS; DICYCLOPENTADIENE; HEALANT; RESTORATION; MORPHOLOGY; STRENGTH
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